A structural defect was introduced within the helical lattice of cholesteric liquid crystals to realize a tunable photonic defect mode in the selective reflection band, or the polarization sensitive photonic band-gap of the cholesteric liquid crystal. The cholesteric liquid crystal material was locally polymerized via a two-photon polymerization process and a finite unpolymerized region was left between two polymerized layers to act as the structural defect in which the helical pitch is different from the polymerized bulk. The structural defect was functionalized by first of all, rinsing the unpolymerized cholesteric liquid crystal, and then infiltrating a photo-chromic dye-doped cholesteric liquid crystal material into the gap. A defect mo...
A new tuning strategy for mirror-less liquid crystals laser is presented. A three layer cell is prep...
Chiral nematic liquid crystals have attracted substantial interest. They spontaneously self-organize...
The future of adaptive materials will rely on transduction of molecular motion across increasing len...
Coupling between the defect mode of a cholesteric liquid crystal and the localized mode of a cholest...
International audienceCholesteric liquid-crystalline states of matter are abundant in nature: athero...
We have studied the lasing characteristics of a dye-doped nematic layer sandwiched by two polymeric ...
There has been a recent surge of interest in smart materials and devices with stimuli-responsive pro...
The authors have investigated the optical characteristics of a one-dimensional hybrid photonic cryst...
Low threshold laser action of dye-doped cholesteric liquid crystals ( CLCs) is demonstrated using an...
The future of adaptive materials will rely on transduction of molecular motion across increasing len...
We discuss the properties of photonic defect modes in cholesteric liquid crystals. Twist defects, is...
By using a chiral molecular motor as a dopant in a cholesteric liquid crystalline film, fully revers...
The dependence of the helical pitch of a cholesteric liquid crystal based on a composite photosensit...
The possibility of the existence of localized optical modes with maximum field intensity at the inte...
Cholesteric liquid crystals (CLCs) are chiral photonic materials with selective reflection in terms ...
A new tuning strategy for mirror-less liquid crystals laser is presented. A three layer cell is prep...
Chiral nematic liquid crystals have attracted substantial interest. They spontaneously self-organize...
The future of adaptive materials will rely on transduction of molecular motion across increasing len...
Coupling between the defect mode of a cholesteric liquid crystal and the localized mode of a cholest...
International audienceCholesteric liquid-crystalline states of matter are abundant in nature: athero...
We have studied the lasing characteristics of a dye-doped nematic layer sandwiched by two polymeric ...
There has been a recent surge of interest in smart materials and devices with stimuli-responsive pro...
The authors have investigated the optical characteristics of a one-dimensional hybrid photonic cryst...
Low threshold laser action of dye-doped cholesteric liquid crystals ( CLCs) is demonstrated using an...
The future of adaptive materials will rely on transduction of molecular motion across increasing len...
We discuss the properties of photonic defect modes in cholesteric liquid crystals. Twist defects, is...
By using a chiral molecular motor as a dopant in a cholesteric liquid crystalline film, fully revers...
The dependence of the helical pitch of a cholesteric liquid crystal based on a composite photosensit...
The possibility of the existence of localized optical modes with maximum field intensity at the inte...
Cholesteric liquid crystals (CLCs) are chiral photonic materials with selective reflection in terms ...
A new tuning strategy for mirror-less liquid crystals laser is presented. A three layer cell is prep...
Chiral nematic liquid crystals have attracted substantial interest. They spontaneously self-organize...
The future of adaptive materials will rely on transduction of molecular motion across increasing len...